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Embedded Through-Section shear strengthening technique using steel and CFRP bars in RC beams of different percentage of existing stirrups

机译:在不同箍筋比例的RC梁中,使用钢和CFRP筋嵌入嵌入式截面抗剪加固技术

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The Embedded Through-Section (ETS) technique is a promising technique for the shear strengthening of existing (RC) elements. According to this technique, holes are drilled through the beam section, and bars of steel or FRP material are introduced into these holes and bonded to the concrete with adhesive materials. An experimental program was carried out with RC T-cross section beams strengthened in shear using the ETS steel bars and ETS CFRP rods. The research is focused on the evaluation of the ETS efficiency on beams with different percentage of existing internal transverse reinforcement (rho(sw) = 0.0%, rho(sw) = 0.1% and rho(sw) = 0.17%). The effectiveness of different ETS strengthening configurations was also investigated. The good bond between the strengthening ETS bars and the surrounding concrete allowed the yield initiation of the ETS steel bars and the attainment of high tensile strains in the ETS CFRP rods, leading to significant increase of shear capacity, whose level was strongly influenced by the inclination of the ETS bars and the percentage of internal transverse reinforcement. (C) 2015 Elsevier Ltd. All rights reserved.
机译:嵌入式贯穿部分(ETS)技术是一种对现有(RC)单元进行剪切加固的有前途的技术。根据该技术,在梁段上钻一些孔,然后将钢或FRP材料的钢筋插入这些孔中,并用粘结材料粘结到混凝土上。使用ETS钢筋和ETS CFRP棒,通过剪力增强的RC T截面梁进行了试验程序。研究集中在评估具有不同内部现有横向钢筋百分比(rho(sw)= 0.0%,rho(sw)= 0.1%和rho(sw)= 0.17%)的梁上的ETS效率。还研究了不同的ETS加固配置的有效性。增强的ETS钢筋与周围混凝土之间的良好粘结使ETS钢筋开始屈服,并在ETS CFRP钢筋中获得高拉伸应变,从而导致剪切能力显着提高,其水平受到倾斜度的强烈影响ETS钢筋的数量和内部横向钢筋的百分比。 (C)2015 Elsevier Ltd.保留所有权利。

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